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Design and experimental evaluation of a 3-mass speed control system with a hybrid structure of sliding mode controller and CMAC

机译:具有滑模控制器和CMAC混合结构的3质量速度控制系统的设计和实验评估

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This paper deals with a design scheme of the speed control for a 3-mass system, which has a hybrid structure of a sliding mode controller and a cerebellar model articulation controller (CMAC). The nonlinear control part in the sliding mode controller is firstly designed, and then a real-coded genetic algorithm is utilized to optimize the output from the sliding mode controller. The CMAC compensates the sliding mode controller so that the control performance is improved well. In this proposed scheme, the divergent property of the CMAC caused by a disturbance is fairly suppressed by effects of the nonlinear control part. The behavior of the newly proposed control scheme is experimentally examined in comparison with using only the sliding mode controller.
机译:本文研究了一种三质量系统的速度控制设计方案,该方案具有滑模控制器和小脑模型关节控制器(CMAC)的混合结构。首先设计了滑模控制器的非线性控制部分,然后利用实数编码遗传算法对滑模控制器的输出进行了优化。 CMAC补偿了滑模控制器,因此控制性能得到了很好的改善。在该方案中,由非线性控制部分的作用可以相当程度地抑制由扰动引起的CMAC的发散特性。与仅使用滑模控制器相比,通过实验检查了新提出的控制方案的行为。

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